电催化剂
单层
氢氧化物
电解质
法拉第效率
电流密度
化学
选择性
交换电流密度
催化作用
无机化学
电极
电化学
有机化学
物理化学
塔菲尔方程
物理
量子力学
生物化学
作者
Yi Xu,Wenjing Li,Huai Qin Fu,Xinyu Zhang,Jia Zhao,Xuefeng Wu,Hai Yang Yuan,Minghui Zhu,Sheng Dai,Peng Fei Liu,Hua Gui Yang
标识
DOI:10.1002/ange.202217296
摘要
Abstract The electrocatalytic reduction of carbon dioxide provides a feasibility to achieve a carbon‐neutral energy cycle. However, there are a number of bottleneck issues to be resolved before industrial application, such as the low conversion efficiency, selectivity and reaction rate, etc. Engineering local environment is a critical way to address these challenges. Here, a monolayer MgAl‐LDH was proposed to optimize the local environment of Cu for stimulating industrial‐current‐density CO 2 ‐to‐C 2 H 4 electroreduction in neutral media. In situ spectroscopic results and theoretical study demonstrated that the Cu electrode modified by MgAl‐LDH (MgAl‐LDH/Cu) displayed a much higher surface pH value compared to the bare Cu, which could be attributed to the decreased energy barrier for hydrolysis on MgAl‐LDH sites with more OH − ions on the surface of the electrode. As a result, MgAl‐LDH/Cu achieved a C 2 H 4 Faradaic efficiency of 55.1 % at a current density up to 300 mA cm −2 in 1.0 M KHCO 3 electrolyte.
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